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[关于光敏色素在芥菜幼苗(白芥)下胚轴纵向生长光调节中的阈值调节的证明]

[Demonstration of a threshold regulation by phytochrome in the photomodulation of longitudinal growth of the hypocotyl of mustard seedlings (Sinapis alba L.)].

作者信息

Schopfer P, Oelze-Karow H

机构信息

Biologisches Institut II der Universität Freiburg i. Br, Freiburg i. Br, Deutschland.

出版信息

Planta. 1971 Jun;100(2):167-80. doi: 10.1007/BF00385217.

DOI:10.1007/BF00385217
PMID:24488140
Abstract

The inhibition of hypocotyl lengthening in intact mustard seedlings is controlled by two photosensitive systems which can be experimentally separated. 1. Kinetics of the growth response in the dark after red and far-red irradiation (Figs. 1, 2) demonstrate the operation of Pfr in the ground state via a threshold mechanism similar to the regulation of lipoxygenase synthesis in the mustard cotyledons (c. f. ref. [27]). This threshold mechanism determines the duration of the growth inhibition (Δt) following irradiation (Fig. 1, 2). Δt is dependent on the relative Pfr concentration at the beginning of the dark period and on the half life of Pfr destruction, but it is independent of the quantum flux density of far-red light (Fig. 4). The effect of 5 min red light on Δt can be fully reversed by 5 min far-red light (Fig. 3). The data reveal a quantitative relationship between the relative Pfr concentration and the photomorphogenetic response, Δt (Fig. 6). This relationship may explain in principle the logarithmic correlation between the percentage of phytochrome converted to Pfr by an initial irradiation and the subsequent response which has also been reported in the literature. 2. In continuous far-red light the velocity constant of the steady state growth is controlled by a "high intensity reaction" which shows the usual logarithmic dependence on quantum flux density (Fig. 4, 5), but no phytochrome destruction is apparent (Fig. 2). According to Hartmann (ref.[11-13]) this "high intensity reaction" can also be attributed to Pfr, which in this case acts through some excited state, P fr (*) . It is concluded that the two photoreactive systems involve separate populations of phytochrome, which inhibit cell lengthening by independent control mechanisms.

摘要

完整芥菜幼苗下胚轴伸长的抑制受两个感光系统控制,这两个系统在实验中可以分离。1. 红光和远红光照射后黑暗中生长反应的动力学(图1、2)表明,基态下的Pfr通过类似于芥菜子叶中脂氧合酶合成调节的阈值机制起作用(参见参考文献[27])。这种阈值机制决定了照射后生长抑制的持续时间(Δt)(图1、2)。Δt取决于黑暗期开始时的相对Pfr浓度以及Pfr破坏的半衰期,但与远红光的量子通量密度无关(图4)。5分钟红光对Δt的影响可被5分钟远红光完全逆转(图3)。数据揭示了相对Pfr浓度与光形态建成反应Δt之间的定量关系(图6)。这种关系原则上可以解释文献中也报道过的,初始照射使植物色素转化为Pfr的百分比与后续反应之间的对数相关性。2. 在连续远红光下,稳态生长的速度常数受“高强度反应”控制,该反应通常对数依赖于量子通量密度(图4、5),但未观察到明显的植物色素破坏(图2)。根据哈特曼(参考文献[11 - 13])的研究,这种“高强度反应”也可归因于Pfr,在这种情况下,Pfr通过某种激发态P fr (*)起作用。得出的结论是,这两个光反应系统涉及不同的植物色素群体,它们通过独立的控制机制抑制细胞伸长。

相似文献

1
[Demonstration of a threshold regulation by phytochrome in the photomodulation of longitudinal growth of the hypocotyl of mustard seedlings (Sinapis alba L.)].[关于光敏色素在芥菜幼苗(白芥)下胚轴纵向生长光调节中的阈值调节的证明]
Planta. 1971 Jun;100(2):167-80. doi: 10.1007/BF00385217.
2
[Photometric investigations of the phytochrome system in mustard seedlings (sinapis alba L.)].[芥菜幼苗(白芥)中光敏色素系统的光度学研究]
Planta. 1969 Mar;88(1):43-57. doi: 10.1007/BF00396113.
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[The control by phytochrome of phenylalanine ammonia-lyase activity in mustard seedlings (Sinapis alba L.)].[光敏色素对芥菜幼苗(白芥)中苯丙氨酸解氨酶活性的调控]
Planta. 1969 Mar;86(1):33-41. doi: 10.1007/BF00385301.
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[Protein and RNA contents of the hypocotyl during steady state growth lengthening in the dark and under the influence of phytochrome (seedlings of sinapis alba L.)].[黑暗中以及在光敏色素影响下(白芥幼苗)稳态生长延长期间下胚轴的蛋白质和RNA含量]
Planta. 1967 Dec;76(4):348-58. doi: 10.1007/BF00387540.
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[The control by actinomycin D and puromycin of the phytochrome-mediated inhibition of hypocotyl lengthening in the mustard seedling (Sinapis alba L.)].[放线菌素D和嘌呤霉素对芥菜幼苗(白芥)中光敏色素介导的下胚轴伸长抑制的控制]
Planta. 1967 Dec;72(4):306-20. doi: 10.1007/BF00390140.
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Control by light of hypocotyl growth in de-etiolated mustard seedlings : II. Sensitivity for newly-formed phytochrome after a light to dark transtition.光对黄化芥菜幼苗下胚轴生长的控制:Ⅱ. 光暗转变后新形成的光敏素的敏感性。
Planta. 1978 Jan;141(2):217-23. doi: 10.1007/BF00387892.
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[Further Investigations on the phytochrome-mediated accumulation of ascorbic acid in the mustard seedling (Sinapis alba L.)].[关于芥菜幼苗(白芥)中光敏色素介导的抗坏血酸积累的进一步研究]
Planta. 1967 Sep;74(3):210-27. doi: 10.1007/BF00384843.
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[Short term changes in soluble sugar and cell-wall carbohydrate content during phytochrome mediated photomorphogenesis in the mustard seedling (Sinapis alba L.)].[芥菜幼苗(白芥)在光敏色素介导的光形态建成过程中可溶性糖和细胞壁碳水化合物含量的短期变化]
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[Kinetical studies to interpret the effects of succedaneous irradiations with red and far-red on photomorphogenesis (anthocyanin synthesis in mustard seedlings, Sinapis alba L.)].[关于解释红光和远红光相继照射对光形态建成(芥菜幼苗,白芥,花青素合成)影响的动力学研究]
Planta. 1966 Mar;70(1):34-41. doi: 10.1007/BF00539908.

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2
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Planta. 1972 Mar;103(1):65-73. doi: 10.1007/BF00394607.
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Reversal of 5-fluorodeoxyuridine-caused growth inhibition in intact and excised etiolated hypocotyls of Sinapis alba L. by thymidine.

本文引用的文献

1
[The control by actinomycin D and puromycin of the phytochrome-mediated inhibition of hypocotyl lengthening in the mustard seedling (Sinapis alba L.)].[放线菌素D和嘌呤霉素对芥菜幼苗(白芥)中光敏色素介导的下胚轴伸长抑制的控制]
Planta. 1967 Dec;72(4):306-20. doi: 10.1007/BF00390140.
2
Phytochrome action in Oryza sativa L. : II. The spectrophotometric versus the physiological status of phytochrome in coleoptiles.植物色素在水稻中的作用:II. 绿芽中植物色素的分光光度计与生理状态。
Planta. 1968 Dec;81(4):303-13. doi: 10.1007/BF00398018.
3
[The inhibition of longitudinal growth by phytochrome -a process requiring substrate uptake?].
胸腺嘧啶对完整和切取的白芥黄化下胚轴中 5-氟脱氧尿苷引起的生长抑制的逆转。
Planta. 1972 Sep;107(3):247-56. doi: 10.1007/BF00397940.
4
[Phytochrome-induced regeneration of adventitious roots in the mustard seedling (Sinapis alba L.)].[光敏色素诱导芥菜幼苗(白芥)不定根的再生]
Planta. 1974 Sep;117(3):269-78. doi: 10.1007/BF00388400.
5
Effect of phytochrome on development of catalase activity and isoenzyme pattern in mustard (Sinapis alba L.) seedlings : A reinvestigation.光敏色素对芥菜(Sinapis alba L.)幼苗过氧化氢酶活性和同工酶模式发育的影响:再研究。
Planta. 1974 Jan;120(1):13-30. doi: 10.1007/BF00388268.
6
Control by light of hypocotyl growth in de-etiolated mustard seedlings : II. Sensitivity for newly-formed phytochrome after a light to dark transtition.光对黄化芥菜幼苗下胚轴生长的控制:Ⅱ. 光暗转变后新形成的光敏素的敏感性。
Planta. 1978 Jan;141(2):217-23. doi: 10.1007/BF00387892.
7
Control by light of hypocotyl growth in de-etiolated mustard seedlings : I. Phytochrome as the only photoreceptor pigment.光对去黄化芥菜幼苗下胚轴生长的控制:I. 光敏色素是唯一的光受体色素。
Planta. 1978 Jan;141(2):211-6. doi: 10.1007/BF00387891.
8
Phytochrome-controlled extension growth of Avena sativa L. seedlings : I. Kinetic characterization of mesocotyl, coleoptile, and leaf responses.光敏色素控制的燕麦属植物幼苗伸长生长:I. 中胚轴、胚根鞘和叶片反应的动力学特征。
Planta. 1982 May;154(3):224-30. doi: 10.1007/BF00387868.
[植物色素对纵向生长的抑制作用——一个需要底物摄取的过程?]
Planta. 1969 Dec;85(4):383-8. doi: 10.1007/BF00381286.
4
[Photometric investigations of the phytochrome system in mustard seedlings (sinapis alba L.)].[芥菜幼苗(白芥)中光敏色素系统的光度学研究]
Planta. 1969 Mar;88(1):43-57. doi: 10.1007/BF00396113.
5
[Photomodulation by phytochrome of the rate of accumulation of ascorbic acid in mustard seedlings (Sinapis alba L.)].[光敏色素对芥菜幼苗(白芥)中抗坏血酸积累速率的光调制作用]
Planta. 1970 Jun;93(2):152-9. doi: 10.1007/BF00387122.
6
[Inhibition of Elongation of Hypocotyls of Sinapis alba with FUDR].[用氟脱氧尿苷抑制白芥下胚轴伸长]
Planta. 1971 Mar;96(1):35-42. doi: 10.1007/BF00397902.
7
The demonstrationin vivo of more than one form ofP fr.体内显示不止一种形式的 Pf 菌。
Planta. 1971 Dec;99(4):302-10. doi: 10.1007/BF00385822.
8
Phytochrome-mediated Induction of Phenylalanine Ammonia-Lyase in Mustard Seedlings: A Contribution to Eliminate Some Misconceptions.光敏色素介导的芥菜幼苗苯丙氨酸解氨酶诱导:消除一些误解的贡献
Plant Physiol. 1972 Jan;49(1):8-10. doi: 10.1104/pp.49.1.8.
9
Dark Reversion of Phytochrome in Sinapis alba L.白芥中光敏色素的暗逆转
Plant Physiol. 1970 Oct;46(4):596-8. doi: 10.1104/pp.46.4.596.
10
Changes in photosensitive stem growth in intact peas following irradiation.完整豌豆在辐照后光敏茎生长的变化。
Plant Physiol. 1969 May;44(5):623-30. doi: 10.1104/pp.44.5.623.